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Zhonghua Zheng Xing Wai Ke Za Zhi 2002 Jul;18(4):219-20

Dense-packing hair grafting technique for restoration of cicatricial alopecia


OBJECTIVE: To investigate the possibility of using dense-packing hair grafting technique for restoration of cicatricial alopecia. METHODS: Under local anesthesia, a scalp strip was harvested from the back of the head. A series of micro-grafts with 1-3 hairs and mini-grafts with 4-6 hairs were created from this strip. In the scarring recipient area, micro-slots were made with a 18 G needle for the micro-grafts and mini-slits were made with a No. 64 mini-blade for the mini-grafts. The grafts were then implanted into these holes. RESULTS: Ninety-six patients with 128 bald scarring areas, resulted from burn, trauma or infection, were treated with the above-mentioned technique from April. 1998 to February. 2000. All of the patients were satisfied with the appearance. In the micro-graft area, the graft density reached 10-15 mini-grafts/cm2 per session. In the micro-graft area, the graft density reached 16-19 micro-grafts/cm2 per session. Postoperative following-up for more than 1 year showed that the grafted hairs were growing well with 90%-95% survival of the hair. One third of the patients obtained satisfactory results with only one session. Two thirds of the patients needed the second session to improve the appearance. CONCLUSIONS: The dense-packing hair grafting technique is a simple, safe and effective method for hair restoration surgery. It is not only used for male pattern baldness, but could also be applied for restoration of cicatricial alopecia.


Pediatr Dermatol 2002 Mar-Apr;19(2):155-8

Alopecia areata in infants and newborns.


Alopecia areata is a common cause of nonscarring hair loss in children and adults. In newborns and very young infants, however, it is thought to be extremely rare. In this article we describe five cases of alopecia areata in patients less than 6 months of age and briefly discuss the pertinent differential diagnosis of infants and newborns with both patchy and complete hair loss. We propose that alopecia areata may be more common in this age group than the literature suggests.


Gan To Kagaku Ryoho. 2003 May;30(5):653-9.

Weekly paclitaxel administration in the adjuvant therapy of primary breast cancer


PURPOSE: To investigate feasibility and toxicity of weekly paclitaxel administration in the adjuvant therapy of primary breast cancer. PATIENTS AND METHODS: Thirty-one patients with primary breast cancer received sustained weekly infusion of paclitaxel at a dose of 90 mg/body for 6 weeks followed by a 2-week interval. This weekly schedule was repeated twice. Leukocytes were checked immediately before every infusion and the dose was reduced to 80 mg/body when grade 1 neutropenia occurred. All patients were assessable for feasibility and toxicity. RESULTS: A total 349 weekly paclitaxel infusions were administrated to 31 patients (median, 12 infusions/patient). The median delivered dose-intensity was 88.0 mg/body/week (range 80 to 90). Therapy was well tolerated and completed in 27 patients. Four patients refused to continue the therapy because of nausea, fatigue, dizziness and weight gain. Grade 2 neutropenia occurred in 10 patients (32.3%), but grade 3 neutropenia did not occur. Grade 1 peripheral neuropathy occurred in 3 patients (9.7%). Grade 1 nausea occurred in 3 patients (9.7%). CONCLUSION: Weekly paclitaxel administration is well tolerated with a favorable toxicity profile in patients with primary breast cancer in the adjuvant setting. Weekly paclitaxel therapy can be performed safely in the outpatient setting.


J Liposome Res. 2002 Feb-May;12(1-2):143-8.

Follicular liposomal delivery systems.


Traditionally, the prime pathway for the topical delivery of active agents across the skin was thought to be through intercellular routes and transcellular routes of the stratum corneum. However, alternative means such as via appenageal transport, i.e., follicular transport, is gaining more acceptances in the scientific community. Targeting specific sites of the hair follicle may represent a feasible therapeutic approach to skin diseases such as hair loss. It is therefore an object of this research to develop novel liposomal formulations for enabling the topical delivery of difficult-to-absorb agents for localized action, specifically to the hair follicles and sebaceous glands. We examined small and large molecules. The small molecule chosen was minoxidil, a known hair growth stimulator. The large molecular weight molecule was plasmid DNA encoded with interleukin-1 receptor antagonist protein (IL-1ra).







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